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Nanoclays for Lipase Immobilization: Biocatalyst Characterization and Activity in Polyester Synthesis

机译:固定化脂肪酶的纳米粘土:聚酯合成中的生物催化剂表征和活性

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The immobilization of Candida antarctica lipase B (CALB) was performed by physical adsorption on both neat and organo-modified forms of sepiolite and montmorillonite. The influence of different parameters, e.g., solvent, enzyme loading, cross-linking, and type of clay support, on immobilization efficiency and catalyst hydrolytic activity has been investigated. The highest hydrolytic activities were obtained for CALB immobilized on organo-modified clay minerals, highlighting the beneficial effect of organo-modification. The esterification activity of these CALB/organoclay catalysts was also tested in the ring-opening polymerization of ε-caprolactone. The polymerization kinetics observed for clay-immobilized catalysts confirmed that CALB adsorbed on organo-modified montmorillonite (CALB/MMTMOD) was the highest-performing catalytic system.
机译:南极假丝酵母脂肪酶B(CALB)的固定是通过物理吸附在海泡石和蒙脱石的纯净和有机改性形式上进行的。已经研究了不同参数,例如溶剂,酶载量,交联和粘土载体的类型对固定化效率和催化剂水解活性的影响。对于固定在有机改性粘土矿物上的CALB,水解活性最高,突出了有机改性的有益作用。这些CALB /有机粘土催化剂的酯化活性也在ε-己内酯的开环聚合中进行了测试。在粘土固定的催化剂上观察到的聚合动力学证实,CALB吸附在有机改性的蒙脱石(CALB / MMTMOD)上是性能最高的催化体系。

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